Free pelvic fluid detection and quantification using transvaginal ultrasound: a surrogate marker for retrograde menstruation
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Transvaginal ultrasound reliably detected and quantified free pelvic fluid, a marker for retrograde menstruation, showing significant within-cycle changes and volume increases with heavier menstrual blood loss.
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Abstract
RESEARCH QUESTION: Can transvaginal ultrasonography (TVUS) reliably detect and quantify free pelvic fluid (FPF) as a surrogate marker of retrograde menstruation, and how do its volume and characteristics vary across menstrual phases, characteristics and gynaecological conditions?
DESIGN: Prospective, observational, single-centre cohort study at a tertiary infertility centre. Women underwent two standardized TVUS examinations within the same natural menstrual cycle: on day 2-3 (menstrual phase) and day 7-10 (medium-late proliferative phase). FPF volume was measured using the ellipsoid formula, and within-cycle changes (ΔVRM) were calculated. The primary outcome was the presence and extent of FPF and within-cycle FPF changes, and the secondary outcome was menstrual-phase FPF changes across menstrual blood loss (MBL) categories.
RESULTS: In total, 102 women were included in this study. FPF was detected in 71.6% (95% CI 61.8-80.1%) on day 2-3 and in 44.1% (95% CI 34.3-54.3%) on day 7-10 (P < 0.001). Among women with measurable FPF (n = 73), ΔVRM was positive in 73% (95% CI 61.4-82.7%; P < 0.001), significantly different from the 50% expected under no within-cycle difference. Median FPF volume declined from 1.0 ml (IQR 0.3-3.2) ml in the menstrual phase to 0 ml (IQR 0-0.6 ml) in the proliferative phase (P 1 ml was observed in 0% (0/4), 43.9% (18/41) and 60.7% (17/28) of women with scanty, normal and heavy MBL, respectively (P = 0.03).
CONCLUSION: Menstrual FPF was detected in over two-thirds of women, with within-cycle volumetric changes, wide variability between women, and increasing magnitude with heavier MBL. These findings suggest that, using FPF as a surrogate marker, retrograde menstruation may be identified and quantified using a simple non-invasive TVUS-based method. This work offers a potential methodological framework for studying menstrual physiology.
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- europepmc
- last seen: 2026-08-04T06:16:37.499272+00:00
- pubmed
- last seen: 2026-08-04T06:11:38.171813+00:00
- scilite
- last seen: 2026-06-21T06:47:03.627287+00:00
- unpaywall
- last seen: 2026-05-29T02:00:03.542394+00:00
License: CC-BY-NC-ND-4.0